Anisotropic Liesegang pattern for the nonlinear elastic biomineral-hydrogel complex

Author:

Choi Woojin1ORCID,Lee Milae1ORCID,Yong Hyungseok1ORCID,Heo Deokjae2,Jun Taesuk1ORCID,Ryu Hanwook2ORCID,Kim Ji-Yeong3ORCID,Cui Dingyun1ORCID,Ryu Du Yeol1ORCID,Lee Sang-Young1ORCID,Choi Sung-Hwan3ORCID,Kim Byeong-Su4ORCID,Kim Jiyu1ORCID,Jung Se Yong5ORCID,Lee Sangmin2ORCID,Hong Jinkee1ORCID

Affiliation:

1. Department of Chemical and Biomolecular Engineering, College of Engineering, Yonsei University, Seoul 03722, Republic of Korea.

2. School of Mechanical Engineering, Chung-ang University, 84, Heukserok-ro, Dongjak-gu, Seoul 06974, Republic of Korea.

3. Department of Orthodontics, Institute of Craniofacial Deformity, Yonsei University College of Dentistry, Seoul 03722, Republic of Korea.

4. Department of Chemistry, Yonsei University, Seoul 03722, Republic of Korea.

5. Department of Pediatrics, Yonsei University College of Medicine, Seoul 03722, Republic of Korea.

Abstract

The Liesegang pattern is a beautiful natural anisotropic patterning phenomenon observed in rocks and sandstones. This study reveals that the Liesegang pattern can induce nonlinear elasticity. Here, a Liesegang-patterned complex with biomineral-hydrogel repetitive layers is prepared. This Liesegang-patterned complex is obtained only when the biomineralization is performed under the supersaturated conditions. The Liesegang-patterned complex features a nonlinear elastic response, whereas a complex with a single biomineral shell shows a linear behavior, thus demonstrating that the Liesegang pattern is essential in achieving nonlinear elasticity. The stiff biomineral layers have buffered the concentrated energy on behalf of soft hydrogels, thereby exposing the hydrogel components to reduced stress and, in turn, enabling them to perform the elasticity continuously. Moreover, the nonlinear elastic Liesegang-patterned complex exhibits excellent stress relaxation to the external loading, which is the biomechanical characteristic of cartilage. This stress relaxation allows the bundle of fiber-type Liesegang-patterned complex to endure greater deformation.

Publisher

American Association for the Advancement of Science (AAAS)

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